Design and development progress of a LLRF control system for a 500 MHz superconducting cavity

被引:0
|
作者
Lee, Y. S. [1 ]
Kim, H. W. [1 ]
Song, H. S. [1 ]
Lee, J. H. [1 ]
Park, K. H. [2 ]
Yu, I. H. [2 ]
Chai, J. S. [1 ,3 ]
机构
[1] Sungkyunkwan Univ, Sch Informat & Commun Engn, Suwon 440746, South Korea
[2] Pohang Univ Sci & Technol, Pohang Accelerator Lab, Pohang 790784, South Korea
[3] Sungkyunkwan Univ, WCU Dept Energy Sci, Suwon 440746, South Korea
基金
新加坡国家研究基金会;
关键词
LLRF control system; IQ method; Digital signal processing; Cavity;
D O I
10.3938/jkps.61.203
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The LLRF (low-level radio-frequency) control system which regulates the amplitude and the phase of the accelerating voltage inside a RF cavity is essential to ensure the stable operation of charged particle accelerators. Recent advances in digital signal processors and data acquisition systems have allowed the LLRF control system to be implemented in digitally and have made it possible to meet the higher demands associated with the performance of LLRF control systems, such as stability, accuracy, etc. For this reason, many accelerator laboratories have completed or are completing the developments of digital LLRF control systems. The digital LLRF control system has advantages related with flexibility and fast reconfiguration. This paper describes the design of the FPGA (field programmable gate array) based LLRF control system and the status of development for this system. The proposed LLRF control system includes an analog front-end, a digital board (ADC (analog to digital converter), DAC (digital to analog converter), FPGA, etc.) and a RF & clock generation system. The control algorithms will be implemented by using the VHDL (VHSIC (very high speed integrated circuits) hardware description language), and the EPICS (experiment physics and industrial control system) will be ported to the host computer for the communication. In addition, the purpose of this system is to control a 500 MHz RF cavity, so the system will be applied to the superconducting cavity to be installed in the PLS storage ring, and its performance will be tested.
引用
收藏
页码:203 / 207
页数:5
相关论文
共 50 条
  • [41] RF design of 324 MHz superconducting (SC) CH cavity for 0.21 beta
    Taletskiy, K.
    Surkov, D.
    Gusarova, M.
    III INTERNATIONAL CONFERENCE ON LASER AND PLASMA RESEARCHES AND TECHNOLOGIES, 2018, 941
  • [42] Design and performance of the digital LLRF control system for isotope production cyclotron
    Chao, Chujie
    Chen, Gen
    Mao, Yuzhou
    Chen, Yonghua
    Ding, Kaizhong
    Zhang, Xin
    JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2023, 82 (02) : 139 - 146
  • [43] Design and power tests of 500 MHz RF cavity of CW microtron for industrial applications
    Makita, Y
    Nakanishi, T
    Pu, YH
    Tanaka, H
    Maruyama, A
    Kim, TH
    Tsukishima, C
    Yamamoto, S
    Nakamura, S
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 2004, 43 (9A): : 6479 - 6480
  • [44] Design study and test of input coupler for 500 MHz five-cell cavity
    Lu, Zhijun
    Li, Xiao
    Zhu, Junyu
    Zhang, Chunlin
    Liu, Yang
    Long, Wei
    Chen, Shengyi
    Liu, Shenghua
    AIP ADVANCES, 2022, 12 (06)
  • [45] Optimized Adaptive Control for the MYRRHA Linear Accelerator CONTROL SYSTEM DESIGN FOR A SUPERCONDUCTING CAVITY IN A PARTICLE ACCELERATOR
    Martin-Hoyo, Isaias
    Bouly, Frederic
    Gandolfo, Nicolas
    Joly, Christophe
    Paparella, Rocco
    Biarrotte, Jean-Luc
    Martin-Sanchez, Juan M.
    IEEE CONTROL SYSTEMS MAGAZINE, 2018, 38 (02): : 44 - 79
  • [46] On the Electromagnetic Design of a βg=0.61 650-MHz Superconducting Radio Frequency Cavity
    Jana, Arup Ratan
    Kumar, Vinit
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2014, 24 (06)
  • [47] INPUT COUPLER DEVELOPMENT FOR SUPERCONDUCTING CAVITY 500 kW CW POWER FEED
    Gusarova, M. A.
    Zavadtsev, A. A.
    Zavadtsev, D. A.
    Krasnov, A. A.
    Lalayan, M. W.
    Sobenin, N. P.
    PROBLEMS OF ATOMIC SCIENCE AND TECHNOLOGY, 2006, (03): : 101 - 103
  • [48] Analog receiver and transmitter design for the ILC main LINAC LLRF control system
    Mavric, Uros
    Chase, Brian
    EUROCON 2007: THE INTERNATIONAL CONFERENCE ON COMPUTER AS A TOOL, VOLS 1-6, 2007, : 1818 - 1822
  • [49] Development of a 166.6 MHz β=1 higher-order-mode-damped superconducting cavity
    Guo, Lin
    Zhang, Pei
    Zhang, Xinying
    Dai, Jin
    Mi, Zhenghui
    Ma, Qiang
    Meng, Fanbo
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2024, 95 (07):
  • [50] Development of a 325 MHz β=0.12 superconducting single spoke cavity for China-ADS
    Li Han
    Dai Jian-Ping
    Sha Peng
    Wang Qun-Yao
    Huang Hong
    Li Li-Hai
    Zhang Juan
    Ma Qiang
    Lin Hai-Ying
    Sun Yi
    Pan Wei-Min
    CHINESE PHYSICS C, 2014, 38 (07)